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在短翅莺科的鳞胸鹪鹛中发现了一条新的性染色体,这增加了 Sylvioidea 鸣禽中非凡的鸟类性染色体多样性。

A novel neo-sex chromosome in Sylvietta brachyura (Macrosphenidae) adds to the extraordinary avian sex chromosome diversity among Sylvioidea songbirds.

机构信息

Department of Biology, Lund University, Lund, Sweden.

Ecology and Genetics Research Unit, University of Oulu, Oulu, Finland.

出版信息

J Evol Biol. 2022 Dec;35(12):1797-1805. doi: 10.1111/jeb.14096. Epub 2022 Sep 26.

Abstract

We report the discovery of a novel neo-sex chromosome in an African warbler, Sylvietta brachyura (northern crombec; Macrosphenidae). This species is part of the Sylvioidea superfamily, where four separate autosome-sex chromosome translocation events have previously been discovered via comparative genomics of 11 of the 22 families in this clade. Our discovery here resulted from analyses of genomic data of single species-representatives from three additional Sylvioidea families (Macrosphenidae, Pycnonotidae and Leiothrichidae). In all three species, we confirmed the translocation of a part of chromosome 4A to the sex chromosomes, which originated basally in Sylvioidea. In S. brachyura, we found that a part of chromosome 8 has been translocated to the sex chromosomes, forming a unique neo-sex chromosome in this lineage. Furthermore, the non-recombining part of 4A in S. brachyura is smaller than in other Sylvioidea species, which suggests that recombination continued along this region after the fusion event in the Sylvioidea ancestor. These findings reveal additional sex chromosome diversity among the Sylvioidea, where five separate translocation events are now confirmed.

摘要

我们报告了在一种非洲莺,Sylvietta brachyura(北方歌鸲;Macrosphenidae)中发现的一种新的性染色体。该物种属于 Sylvioidea 超科,此前通过对该分支的 22 个科中的 11 个进行比较基因组学研究,已经发现了四个独立的常染色体-性染色体易位事件。我们在这里的发现源于对来自 Sylvioidea 三个额外科(Macrosphenidae、Pycnonotidae 和 Leiothrichidae)的三个单一物种代表的基因组数据的分析。在这三个物种中,我们都证实了 4A 染色体的一部分转移到了性染色体上,这部分起源于 Sylvioidea 的基部。在 S. brachyura 中,我们发现 8 号染色体的一部分已经转移到了性染色体上,在这个谱系中形成了一个独特的新性染色体。此外,S. brachyura 中 4A 的非重组部分比其他 Sylvioidea 物种的小,这表明在 Sylvioidea 祖先的融合事件之后,该区域的重组仍在继续。这些发现揭示了 Sylvioidea 中更多的性染色体多样性,现在已经确认了五个独立的易位事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8c0/10087220/19be89c06758/JEB-35-1797-g002.jpg

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